Horticulture Research is an open access international journal devoted to publishing original research results and reviews on the best research in the field.
CRISPR/Cas9 technology 🔬 boosts strawberry firmness by up to 70% by editing the FaPG1 gene, extending shelf life—a breakthrough for softer fruit varieties!
#GeneticEngineering
#Agriculture
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Dynamic changes in transposable element and gene methylation in mulberry (Morus notabilis) in response to Botrytis cinerea
#horticulture
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CRISPR/Cas9 offers rapid breeding strategy for diverse fruit colors in tomatoes. Multiplex gene editing of PSY1, MYB12, and SGR1 achieves transgene-free plants with varied colors in less than a year.
#TomatoBreeding
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Chromosome-scale genome assembly of okra reveals its phylogenetic status and three whole-genome duplications, leading to nutrient-rich content and adaptation.
#Genomics
#CropScience
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🌼🧬 Introducing the Plant Flowering-time Gene Database (PFGD)! This study maps 183,720 genes across 8 pathways, creating a detailed atlas for plant flowering research.
#PlantScience
#Genomics
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StTST1 in potatoes impacts sugar storage during cold conditions. Silencing StTST1 reduces acrylamide in chips and improves frying quality. New strategy for healthier potato products! 🥔
#PotatoResearch
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Unlocking tomato crop potential: Study reveals miR396's pivotal role in shoot regeneration, offering insights for enhanced yield via genetic engineering.
#CropScience
#GeneticEngineering
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Flowering is vital in the plant kingdom for ecology and horticulture. Our extensive review of flowering genes across sequenced angiosperms led to the creation of the Plant Flowering-time Gene Database (PFGD)
#PlantScience
#Genomics
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🥒 Cucumber's 'qiu' mutant has round fruits due to CsTRM5 gene's impact on cell division & expansion. ABA hormone also plays a role in fruit elongation. Insights offer potential for crop improvement.
#CucumberGenetics
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SlMYB1 in tomatoes boosts lycopene synthesis, resistance to Botrytis cinerea, and improves fruit shape, enhancing quality and stress resistance. A multi-functional game-changer for tomato farming. 🍅🧬
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Microbe-assisted crop improvement: a sustainable weapon to restore holobiont functionality and resilience
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#Horticulture
#research
New gap-free kiwifruit genome, Hongyang v4.0, offers unparalleled detail, including two de novo haploid-resolved haplotypes. A breakthrough for kiwifruit research and breeding. 🥝🧬
#Genomics
#KiwifruitResearch
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Using CRISPR/Cas9 to edit the FaPG1 gene in strawberries significantly increases firmness, extending shelf life. This breakthrough enhances postharvest quality without affecting other fruit traits.
#StrawberryScience
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Wu et al. reveal the role of abscisic acid in modulating mango fruit ripening through metabolomic and transcriptomic analyses.
Learn more in the latest paper from
#Horticulture
#research
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First-ever haplotype-resolved genome of octoploid strawberry unveiled! Offers insights into gene function & evolution, including structural diversity in anthocyanin biosynthesis. 🍓
#Genomics
#strawberry
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#Horticulture
#Research
Journal Impact Factor2021 has risen from 6.793 to 7.291. Thanks to all authors, reviewers and editors of articles that were published in our journal to make this score! Looking forward to more excellent articles published in HR!
#JCR2021
Wild Solanum habrochaites secretes more anti-insect metabolites than cultivated tomatoes, boosting pest resistance. Key genes in the phenylpropanoid pathway are identified for breeding. 🐛🍅
#TomatoBreeding
#PlantDefense
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The genome of the C4 model plant Gynandropsis gynandra reveals insights into the evolution of C4 photosynthesis. This resource aids future crop engineering.
#Genomics
#Evolution
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🥒🧬 Cucumber Shape Unlocked! Mutant analysis reveals CsTRM5 gene controls fruit shape through cell division and expansion, influenced by ABA. Discoveries pave way for breeding!
#PlantGenetics
#CucumberResearch
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Unveiling the genetics of fleshy fruit shape: Insights from tomato, cucumber, and peach reveal conserved pathways and phytohormone coordination.
#CropImprovement
#Genetics
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🍅🧬 Tomato Taste Unlocked! GWAS reveals new locus STP1 controlling sugar content in tomatoes, highlighting selection impacts on fruit quality during domestication.
#Genomics
#Agriculture
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Discovery of natural variation in tomato's SOS2 gene linked to salt resistance may provide valuable resources for breeding salt-resistant crops.
#PlantGenomics
#CropBreeding
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Advancing grapevine breeding with GWAS! 🌿🍇 We analyzed 588 Vitis vinifera L. cultivars, identifying key genes for berry size and post-harvest traits.
#GrapevineBreeding
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🍅 Mutant tomato plants with altered flower development reveal the crucial role of the TM6 gene, a MADS-box transcription factor, in controlling flower morphology and reproductive development.
#tomatoes
#flowerdevelopment
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🌱🔬 Polyploid Power in Potatoes! Discovering the unique benefits of autotetraploid potatoes: larger tubers, distinct gene expression, and potential cold storage advantages over diploid varieties.
#PlantScience
#Genetics
🥔💡
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New discovery in Salvia miltiorrhiza research! 🌿 Scientists uncover the genetic basis behind orange roots in a S. miltiorrhiza line, shedding light on the biosynthesis of tanshinone compounds.
#SalviaMiltiorrhiza
#Tanshinones
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Bacterial wilt, a global threat to Solanaceae plants, unraveled! SmNAC's dance with SmDDA1b reveals a novel regulator in BW resistance.
#PlantScience
#BacterialWilt
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🍅🔬 SlDCD2's Role in Tomato Ripening! New insights reveal that silencing or mutating SlDCD2 speeds up tomato fruit ripening by affecting H2S production, impacting ROS balance and ethylene levels.
#PlantScience
#TomatoResearch
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Study reveals N-acylethanolamines' crucial role in plant defense response, with potential implications for crop disease management in changing climate.
#PlantScience
#ClimateChange
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Salt-responsive lncRNAs identified in birch trees play key roles in stress tolerance. LncY1 notably boosts salt tolerance by regulating specific transcription factors. 🌳
#PlantGenomics
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Chromosome-level assembly of the Cascade hop genome achieved! This breakthrough aids cultivation strategies, deepens hop genomic insights, and benefits the Cannabaceae genomics community. 🌱🧬
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🌱 New insights on antiviral RNA interference (RNAi) in plants, especially tomatoes! CRISPR-Cas9 reveals AGO2a's pivotal role in combating Cucumber mosaic virus. 🍅
#PlantImmunity
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abscisic acid and gibberellin antagonize corm development by mediating starch synthesis in Gladiolus hybridus 🌼
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Mango faces agronomic challenges like pathogens and low yield. Conventional breeding struggles due to its traits. Genomic studies offer hope, identifying key genes for traits and aiding breeding.
#MangoGenomics
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Precise exogenous insertion and sequence replacements in poplar by simultaneous HDR overexpression and NHEJ suppression using CRISPR-Cas9
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#Horticulture
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Revolutionizing gene editing in tomatoes! 🍅 Our study unveils Double Pairs of sgRNAs (DPS), an innovative approach for efficient large fragment deletions.
#CRISPR
#GeneticEditing
🌱🔬 Unraveling Grafting Mysteries: A study on periclinal chimeras reveals how grafting induces heritable phenotypic variations through DNA methylation changes.
#PlantScience
#Genetics
🧬🌿
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Genome-wide transcriptome analysis reveals molecular pathways involved in leafy head formation of Chinese cabbage (Brassica rapa)
#hortres
#horticulture
@GuusjeBonnema1
Unveiling the floral secrets: RcMYB1, a key transcription factor, emerges as the maestro orchestrating rose color. Exciting possibilities for genetic enhancement! 🌹🧬
#RoseColorGenetics
Harnessing multi-omics and machine learning can help us breed tastier tomatoes. Reviewing recent advances in the pursuit of better flavor in our most valued fruit.
#AgriculturalScience
#PlantGenetics
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H2S enhances drought resistance in Chinese cabbage by balancing stomatal closure and photosynthesis efficiency, with key roles in RuBisCO activity. 🌱💧
#PlantScience
#DroughtResilience
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A Cucurbita pepo dwarf mutant, dwfcp, exhibits multiple growth and development defects linked to a mutation in gene Cp4.1LG17g04540, akin to Arabidopsis DWF5. 🌱
#plantbiology
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🍎 Syzygium samarangense, the wax apple, is a tropical fruit rich in vitamin C and anthocyanins, offering skin hydration and antioxidant benefits.
#WaxApple
#GenomeSequencing
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🌿🧬 Groundbreaking Genome Assembly of Rhodomyrtus tomentosa! New insights into its evolution and anthocyanin synthesis pave the way for medicinal plant breeding.
#Genomics
#PlantScience
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